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利用二次谐波产生显微镜选择性检测和定量有机分子结晶。

Selective detection and quantitation of organic molecule crystallization by second harmonic generation microscopy.

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

Anal Chem. 2010 Jul 1;82(13):5425-32. doi: 10.1021/ac100564f.

Abstract

Second order nonlinear optical imaging of chiral crystals (SONICC) was applied to selectively detect crystal formation at early stages and characterize the kinetics of nucleation and growth. SONICC relies on second harmonic generation (SHG), a nonlinear optical effect that only arises from noncentosymmetric ordered domain structures, which include crystals of chiral molecules. The model systems studied include pharmaceutically relevant compounds: griseofulvin and chlorpropamide. SONICC demonstrates low detection limits producing an 8 order of magnitude improvement relative to macroscopic average techniques and 5 order of magnitude improvement relative to optical microscopy. SONICC was also applied to examine the kinetics of crystallization in amorphous griseofulvin. The results show that SONICC enables simultaneous monitoring of individual crystal growth, nucleation rate, and macroscopic crystallization kinetics.

摘要

手性晶体的二阶非线性光学成像(SONICC)被应用于选择性地检测早期晶体形成,并对成核和生长动力学进行特征化。SONICC 依赖于二次谐波产生(SHG),这是一种仅在非中心对称有序畴结构中出现的非线性光学效应,包括手性分子的晶体。所研究的模型系统包括具有药用相关性的化合物:灰黄霉素和氯苯丙胺。SONICC 具有较低的检测极限,相对于宏观平均技术提高了 8 个数量级,相对于光学显微镜提高了 5 个数量级。SONICC 还被应用于检查非晶态灰黄霉素的结晶动力学。结果表明,SONICC 能够同时监测单个晶体生长、成核速率和宏观结晶动力学。

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